Advancements in methodologies and techniques for the synthesis of energetic materials: A review

IF 3.9 Q2 CHEMISTRY, MULTIDISCIPLINARY Energetic Materials Frontiers Pub Date : 2024-06-01 DOI:10.1016/j.enmf.2024.06.002
Wei Du , Lei Yang , Jing Feng , Wei-hua Zhu , Jin-shan Li , Peng-cheng Zhang , Qing Ma
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Abstract

Recent years have witnessed significant advancements in methodologies and techniques for the synthesis of energetic materials, which are expected to shape future manufacturing and applications. Techniques including continuous flow chemistry, electrochemical synthesis, microwave-assisted synthesis, and biosynthesis have been extensively employed in the pharmaceutical and fine chemical industries and, gratifyingly, have found broader applications. This review comprehensively introduces recent advancements in the utilization of these emerging techniques, aiming to provide a catalyst for the development of novel green methods and techniques for synthesizing energetic materials.

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高能材料合成方法和技术的进展:综述
近年来,合成高能材料的方法和技术取得了长足进步,预计这些技术将影响未来的生产和应用。连续流化学、电化学合成、微波辅助合成和生物合成等技术已在制药和精细化工行业得到广泛应用,令人欣慰的是,这些技术的应用范围也越来越广。本综述全面介绍了利用这些新兴技术的最新进展,旨在为开发合成高能材料的新型绿色方法和技术提供催化剂。
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来源期刊
Energetic Materials Frontiers
Energetic Materials Frontiers Materials Science-Materials Science (miscellaneous)
CiteScore
6.90
自引率
0.00%
发文量
42
审稿时长
12 weeks
期刊最新文献
Synthesis and characterization of a new cage-like energetic compound 3,7-dinitrato-9-nitro-9-azanoradamantane Amphoteric feature of 3,5-diamino-6-hydroxy-2-oxide-4-nitropyrimidone and its highly-stable energetic anionic salts Nitrogen-rich skeleton reassembled ECOFs as energetic materials with low sensitivities and good corrosion resistance Polynitro 1,2,3-triazole energetic materials with excellent properties through the combination of hydrogen-rich cation and N-amino group Two-step facile access to a novel pyrazole-based high energy density oxidizer via pentanitro-functionalization
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